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Constitutive modelling of transformation pattern in superelastic NiTi shape memory alloy under cyclic loading

机译:循环加载下超弹性NITI形状记忆合金中变形模式的组成型建模

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In this paper, multiple cases of cyclic loadings on superelastic NiTi are studied experimentally and then numerically by means of finite element simulations. A novel constitutive framework is proposed to account for cyclic response of superelastic NiTi shape memory alloy. Martensitic transformation and degradation of mechanical properties are taken into consideration. The mechanical instability is involved in the model to reproduce transformation pattern under primarily tensile stress states. The Helmholtz free energy of the representative volume element is derived and the evolutions of internal variables are obtained keeping to dissipative inequality. Based on backward Euler integration scheme, the model is implemented implicitly into a finite element code. By comparing the simulation results with the experimental ones, it is verified that the proposed approach captures the features of the cyclic response and the associated strain pattern reasonably.
机译:在本文中,通过有限元模拟进行了实验研究了超弹性Niti上的多种循环载荷的循环载荷情况。 提出了一种新颖的构成框架,以解释超弹性NITI形状记忆合金的循环响应。 考虑了马氏体转化和机械性能的降解。 机械不稳定性涉及模型以在主要拉伸应力状态下再现变换模式。 代表体积元素的Helmholtz自由能量是推导的,并且获得内部变量的演变,保持耗散不等式。 基于向后欧拉集成方案,模型隐式地实现为有限元代码。 通过将模拟结果与实验结果进行比较,验证所提出的方法合理地捕获循环响应和相关的应变模式的特征。

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